SU441320A1 - Lead based alloy - Google Patents

Lead based alloy

Info

Publication number
SU441320A1
SU441320A1 SU1863155A SU1863155A SU441320A1 SU 441320 A1 SU441320 A1 SU 441320A1 SU 1863155 A SU1863155 A SU 1863155A SU 1863155 A SU1863155 A SU 1863155A SU 441320 A1 SU441320 A1 SU 441320A1
Authority
SU
USSR - Soviet Union
Prior art keywords
based alloy
lead
lead based
alloy
strontium
Prior art date
Application number
SU1863155A
Other languages
Russian (ru)
Inventor
Юрий Дмитриевич Дунаев
Зейнеш Аженовна Нысанбаева
Глеб Захарович Кирьяков
Original Assignee
Институт Органического Катализа И Электрохимии Ан Каз.Сср
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Институт Органического Катализа И Электрохимии Ан Каз.Сср filed Critical Институт Органического Катализа И Электрохимии Ан Каз.Сср
Priority to SU1863155A priority Critical patent/SU441320A1/en
Application granted granted Critical
Publication of SU441320A1 publication Critical patent/SU441320A1/en

Links

Landscapes

  • Electrolytic Production Of Metals (AREA)

Description

1one

Изобретение относитс  к o(f ласти изыскани  сплавов на основе свинца,предназначенных дл  изготовлени  анодов,использующихс  при электролизе сернокислых растворов дл  извлечени  ыеталлов, в частности цинка,кадми ,марганцаThe invention relates to o (f field for the search for lead-based alloys for the manufacture of anodes used in the electrolysis of sulphate solutions for the extraction of metals, in particular zinc, cadmium, manganese

и др.and etc.

Известен сплав на основе свинца , с оде ржа щи и вес.: Серебро0,8-2,5Known alloy based on lead, with clothing and weight .: Silver0.8-2.5

Олово0,2-0,5Tin 0.2-0.5

Кобальт0,02-0,08Cobalt0.02-0.08

Кремний0,1-0,3Silicon0,1-0,3

СвинецОстальноеLeadEverything

Предлагаемый сплав отличает1с  от известного наличием стронци , что способствует повышению его коррозионной стойкости,уменьшению шламообразовани ,снижению количества свинца в цинке и повышению выхода цинка по току при электролизе сернокисльрс растворов.The proposed alloy differs from the known presence of strontium, which increases its corrosion resistance, reduces sludge formation, reduces the amount of lead in zinc, and increases the current output of zinc during the electrolysis of sulfur solution.

Сплав имеет следующий состав вес.« о о сThe alloy has the following composition weight.

СереброЙ Х Silver X

Олово0,2-О.р .Tin0,2-O.

Кобальт0,02-0,08Cobalt0.02-0.08

КремнийЙ4ЙЧSilicon4YCH

Стронций0,1Ч},5Strontium 0.1H}, 5

СвинецОстальноеLeadEverything

Свойства предлагаемого спла ва отражены в таблице.The properties of the proposed alloy are shown in the table.

Испытани  проведены в 2 н, Н ,оОлпри содержании цин-„The tests were carried out in 2 n, N, oO, and the content of zinc—

ка 60 г/л, плотности тока 500 а/м и температуре .ka 60 g / l, current density 500 a / m and temperature.

ПРЕДМЕТ ИЗОБРЕТЕНИЯSUBJECT OF INVENTION

Сплав на освове свинца,содержащий серебро,олово,кобальт,кремний , о тличающийс   тем,что ,с целью повышени  корроэион ШоAn alloy on lead lead containing silver, tin, cobalt, silicon, characterized in that, in order to increase the corrosion Sho

нойстойкости и улучшени  рабочиххарактеристик ,в него дополнительно введен стронций при следующем соотношении компонентов,вес, Серебро 0,8-2,5 Олово0,2-0,5of corrosion resistance and improvement of working characteristics, strontium was additionally introduced into it in the following ratio of components, weight, Silver 0.8-2.5 Tin 0.2-0.5

кобальт 0,02-0,08 Кремний 0,1-0,3 стронций 0,1-0,3 Свинец Остальноеcobalt 0.02-0.08 Silicon 0.1-0.3 strontium 0.1-0.3 Lead Else

SU1863155A 1972-12-27 1972-12-27 Lead based alloy SU441320A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU1863155A SU441320A1 (en) 1972-12-27 1972-12-27 Lead based alloy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU1863155A SU441320A1 (en) 1972-12-27 1972-12-27 Lead based alloy

Publications (1)

Publication Number Publication Date
SU441320A1 true SU441320A1 (en) 1974-08-30

Family

ID=20536799

Family Applications (1)

Application Number Title Priority Date Filing Date
SU1863155A SU441320A1 (en) 1972-12-27 1972-12-27 Lead based alloy

Country Status (1)

Country Link
SU (1) SU441320A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4170470A (en) 1976-02-18 1979-10-09 Globe-Union Inc. High strength lead alloy

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4170470A (en) 1976-02-18 1979-10-09 Globe-Union Inc. High strength lead alloy

Similar Documents

Publication Publication Date Title
FI65821C (en) ANALYZING AV BLYLEGERING SOM ANODER VID ELEKTROLYTISK TILLVARATAGNING AV ZINK
JPS5767153A (en) Production of zinc alloy hot dipped steel plate of high resistance to exfoliation of plating with time
SU441320A1 (en) Lead based alloy
GB1376771A (en) Zinc alloy powder electrodes
SU467145A1 (en) Electrolyte for precipitation of tin-bismuth alloy
US3710474A (en) Vanadium-modified tantalum foil
SU396400A1 (en) LEAD-BASED ALLOY
SU448241A1 (en) Lead based alloy
SU369164A1 (en) Lead-based Anode Alloy12
SU179473A1 (en) METHOD OF OBTAINING A LEAD-BASED ALLOY WITH SULFUR AND COBALT MELTING ADDITIVES FOR MAKING INSOLUBLE ANODES
US3672868A (en) Zinc dust for removal of cobalt from electrolyte
SU309966A1 (en) LEAD-BASED ALLOY
ES391620A1 (en) Elimination of floating slime during electrolytic refining of copper
SU464636A1 (en) Lead based alloy
DE464959C (en) Solution electrode for primary and secondary elements made of zinc or cadmium
Won Direct Acid Leaching of Zinc from Marmatite Ores 3 Acid Leaching of Marmatite Ores and the Electrode Potential Behavior of Sulfides
SU526685A1 (en) Electrolyte for producing bismuth-tin alloy powders
SU388049A1 (en) LEAD ANODE ALLOY
JPS5842740A (en) Zinc alloy for electrode
SU443088A1 (en) Lead based alloy
Campbell CCXXII.—Electrolytic formation of alloys and amalgams of manganese
SU773113A1 (en) Method of electroleaching of zinc-containing materials
SU50752A1 (en) The method of processing electrolyte sludge
SU446563A1 (en) The method of producing metal alloys
SU127034A1 (en) Antifriction aluminum based alloy